Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Improved African buffalo optimization-based Energy Efficient Clustering Wireless Sensor Networks using Metaheuristic Routing Technique

Domaine:

digital infrastructure
Créateur:
SWEAmiDil
Éditeur:
Spr
Hôte:
Abstract Wireless sensor network (WSN) plays a crucial role in the Internet of Things (IoT), which assist to produce seamless information that have a great impact on the network lifetime. Despite the substantial application of the WSN numerous challenges like energy, load balancing, security, and storage exist. Energy efficacy is regarded as an integral part of the design of WSN; this can be achieved by clustering and multi-hop routing technique using metaheuristic optimization algorithm. This paper concentrates on design of metaheuristics cluster-based routing technique for energy-efficient WSN (MHCRT-EEWSN). The presented MHCRT-EEWSN technique mainly concentrates on the improvements of energy efficiency and lifespan of the WSN via clustering and routing process. For effectual clustering process, the MHCRT-EEWSN model utilizes whale moth flame optimization (WMFO) technique can be utilized by the use of fitness function involving intra-cluster distance, inter-cluster distance, energy, and balancing factor. Besides, the MHCRT-EEWSN model employs improved African buffalo optimization (IABO) based routing technique. To select optimal routes in WSN, the IABO algorithm designs a fitness function comprising multiple parameters like residual energy and distance factor. The experimental validation of the MHCRT-EEWSN model can be tested by making use of a series of simulations. A wide-ranging comparative study shows the promising performances of the MHCRT-EEWSN model than other recent methods.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0/

Similaires

Metaheuristic Moth Flame Optimization Based Energy Efficient Clustering Protocol for 6G Enabled Unmanned Aerial Vehicle NetworksPERFORMANCE EVALUATION OF ENERGY EFFICIENT ANT COLONY OPTIMIZATION FOR WIRELESS SENSOR NETWORKDevelopment of a Wireless Sensor Network (WSN) Based Energy Efficient Cattle Monitoring SystemSmart River Monitoring Using Wireless Sensor NetworksEnergy Efficient Management for Wireless Mesh Networks with Green RoutersAn Efficient African Buffalo Optimization Algorithm for Traveling Salesman Problem Using Fuzzy Matrix

Metaheuristic Moth Flame Optimization Based Energy Efficient Clustering Protocol for 6G Enabled Unmanned Aerial Vehicle Networks

International audience Recently, 6G networks have gained significant attention among

PERFORMANCE EVALUATION OF ENERGY EFFICIENT ANT COLONY OPTIMIZATION FOR WIRELESS SENSOR NETWORK

PERFORMANCE EVALUATION OF ENERGY EFFICIENT ANT COLONY OPTIMIZATION FOR WIRELESS SENSOR NETWORK Su

Development of a Wireless Sensor Network (WSN) Based Energy Efficient Cattle Monitoring System

International audience This study shows how to monitor the movement of cattle using w

Smart River Monitoring Using Wireless Sensor Networks

Water quality monitoring (WQM) systems seek to ensure high data precision, data accuracy, timely rep

Energy Efficient Management for Wireless Mesh Networks with Green Routers

International audience Wireless Mesh Networks (WMNs) consist of a high-density of hun

An Efficient African Buffalo Optimization Algorithm for Traveling Salesman Problem Using Fuzzy Matrix

Abstract African Buffalo Optimization, as a novel evolutionary computing technique, has su